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Comparative study on humidified gas turbine cycles with different air saturator designs

机译:不同空气饱和器设计的湿式燃气轮机循环的比较研究

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The urge for more energy-efficient power plant systems to relieve the energy crisis triggers the design for more advanced power cycles. The humidified gas turbine cycle is considered one of the potential choices, and the air saturator performance is critical to the energy merit of such kind of system. To understand more, the performances of humidified gas turbine cycles with two types of air saturator designs were compared in this study. Type 1 air saturator was a hybrid design which combined an indirect evaporative cooler with a Maisotsenko cycle while Type 2 was a conventional indirect evaporative cooler. Detailed heat and mass transfer analysis was taken into account in the air saturator modelling. Through system simulations, it was found that all the humidified gas turbine cycle systems offered higher system efficiencies than a simple gas turbine system with recuperator. Besides, parametric studies were conducted which highlighted the effects of system inlet air temperature, turbine inlet temperature, water injection rate, and part-load ratio on the performances of the different humidified gas turbine cycle designs. The employment of Type 1 air saturator offered 9.34% and 23.55% enhancement in the system efficiencies as compared to those using Type 2 air saturator under the design and 50% part-load ratio conditions respectively. This reinforced the benefit of applying Maisotsenko cycle to the air saturator design of humidified gas turbine cycle for the enhancement of system efficiency.
机译:寻求更节能的电厂系统来缓解能源危机的冲动触发了更先进的电源循环的设计。加湿燃气轮机循环被认为是潜在的选择之一,而空气饱和器的性能对于此类系统的能源价值至关重要。为了进一步了解,在本研究中比较了带有两种类型的空气饱和器设计的加湿燃气轮机循环的性能。 1型空气饱和器是一种混合设计,将间接蒸发冷却器与Maisotsenko循环结合在一起,而2型是常规的间接蒸发冷却器。在空气饱和器模型中考虑了详细的传热和传质分析。通过系统仿真发现,与带回热器的简单燃气轮机系统相比,所有加湿燃气轮机循环系统都具有更高的系统效率。此外,进行了参数研究,突出了系统进气温度,涡轮机入口温度,注水率和部分负载比对不同加湿燃气轮机循环设计性能的影响。与在设计和部分负载比条件下使用2型空气饱和器的系统效率相比,使用1型空气饱和器的系统效率分别提高了9.34%和23.55%。这加强了将Maisotsenko循环应用于加湿燃气轮机循环的空气饱和器设计的好处,从而提高了系统效率。

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